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History and evolution of cytogenetic techniques: Current and future applications in basic and clinical research

机译:细胞遗传学技术的历史和演化:基础和临床研究中的当前和未来应用

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摘要

Chromosomes are the vehicles of genes, which are the functional units of a cell's nucleus. In humans, there are more than 20,000 genes that are distributed among 46 chromosomes in somatic cells. The study of chromosome structure and function is known as cytogenetics which is historically a field of hybrid science encompassing cytology and genetics. The field of cytogenetics has undergone rapid developments over the last several decades from classical Giemsa staining of chromosomes to 3-dimensional spatial organization of chromosomes with a high resolution mapping of gene structure at the nucleotide level. Improved molecular cytogenetic techniques have opened up exciting possibilities for understanding the chromosomal/molecular basis of various human diseases including cancer and tissue degeneration. This review summaries the history and evolution of various cytogenetic techniques and their current and future applications in diverse areas of basic research and medical diagnostics.
机译:染色体是基因的载体,其是细胞核的功能单元。 在人类中,存在超过20,000个基因,其在体细胞中的46条染色体中分布。 染色体结构和功能的研究称为细胞遗传学,历史上是一种包含细胞学和遗传学的杂交科学领域。 从核苷酸水平的高分辨率映射到核苷酸水平的基因结构的高分辨率映射,细胞遗传学研究领域经历了染色体的古典Giemsa染色至三维空间组织的染色体染色的快速发展。 改善的分子细胞遗传学技术已经开辟了理解各种人类疾病的染色体/分子基础,包括癌症和组织变性的刺激可能性。 本综述概述了各种细胞遗传学技术的历史和演变及其在基础研究和医疗诊断等各种领域的当前和未来应用。

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